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Lithium induces aerobic glycolysis and glutaminolysis in collecting duct principal cells

机译:锂在收集管道主体细胞中诱导有氧糖酵解和谷氨酸溶解

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Lithium, given to bipolar disorder patients, causes nephrogenic diabetes insipidus (Li-NDI), a urinary-concentrating defect. Li-NDI occurs due to downregulation of principal cell AQP2 expression, which coincides with principal cell proliferation. The metabolic effect of lithium on principal cells, however, is unknown and investigated here. In earlier studies, we showed that the carbonic anhydrase (CA) inhibitor acetazolamide attenuated Li-induced downregulation in mouse-collecting duct (mp-kCCD) cells. Of the eight CAs present in mpkCCD cells, siRNA and drug treatments showed that downregulation of CA9 and to some extent CA12 attenuated Li-induced AQP2 downregulation. Moreover, lithium induced cell proliferation and increased the secretion of lactate. Lithium also increased urinary lactate levels in wild-type mice that developed Li-NDI but not in lithium-treated mice lacking ENaC, the principal cell entry site for lithium. Inhibition of aerobic glycolysis with 2-deoxyglucose (2DG) attenuated lithium-induced AQP2 down-regulation in mpkCCD cells but did not attenuate Li-NDI in mice. Interestingly, NMR analysis demonstrated that lithium also increased the urinary succinate, fumarate, citrate, and NH_4+ levels, which were, in contrast to lactate, not decreased by 2DG. Together, our data reveal that lithium induces aerobic glycolysis and glutaminolysis in principal cells and that inhibition of aerobic glycolysis, but not the glutaminolysis, does not attenuate Li-NDI.
机译:给予双相情感障碍患者的锂导致肾病糖尿病(Li-Ndi),尿液浓缩缺陷。由于主要细胞AQP2表达的下调,锂Ndi发生,这与主要细胞增殖一致。然而,锂对主细胞的代谢效果是未知的并且在此研究。在早期的研究中,我们表明,碳酸酐酶(CA)抑制剂乙酰唑胺减振了小鼠收集管道(MP-KCCD)细胞中的锂诱导的下调。在MPKCCD细胞中存在的八种CAS中,siRNA和药物处理表明,CA9的下调和在某种程度上CA12减弱了锂诱导的AQP2下调。此外,锂诱导细胞增殖并增加了乳酸的分泌。锂还增加了野生型小鼠的尿乳酸水平,所述野生型小鼠开发Li-NDI,但不在缺乏ENAC的锂处理小鼠中,锂的主要细胞进入部位。用2-脱氧葡萄糖(2DG)抑制有氧糖酵解(2DG)减毒锂诱导的MPKCCD细胞中的锂诱导的AQP2下调,但未在小鼠中衰减Li-Ndi。有趣的是,NMR分析表明,锂也增加了与乳酸乳酸相反的尿琥珀酸盐,富马酸盐,柠檬酸盐和NH_4 +水平,而不是由2Dg降低。我们的数据揭示了锂诱导主要细胞的有氧糖酵解和谷氨酸溶解,并且抑制有氧糖醇,但不是谷氨酸溶解,不衰减Li-Ndi。

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